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Handbook of Nonlocal Continuum Mechanics for Materials and Structures

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Cover of 'Handbook of Nonlocal Continuum Mechanics for Materials and Structures'

Table of Contents

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    Book Overview
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    Chapter 1 Microplane Models for Elasticity and Inelasticity of Engineering Materials
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    Chapter 2 Strain Gradient Crystal Plasticity: Thermodynamics and Implementation
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    Chapter 4 Strain Gradient Crystal Plasticity: Intergranular Microstructure Formation
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    Chapter 5 Modeling High-Speed Impact Failure of Metallic Materials: Nonlocal Approaches
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    Chapter 6 Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels
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    Chapter 7 Axial Vibration of Strain Gradient Micro-rods
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    Chapter 8 Size-Dependent Transverse Vibration of Microbeams
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    Chapter 9 Micromorphic Approach to Gradient Plasticity and Damage
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    Chapter 10 Cosserat Approach to Localization in Geomaterials
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    Chapter 12 Dispersion of Waves in Micromorphic Media and Metamaterials
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    Chapter 14 Higher Order Thermo-mechanical Gradient Plasticity Model: Nonproportional Loading with Energetic and Dissipative Components
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    Chapter 15 Fractional Nonlocal Continuum Mechanics and Microstructural Models
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    Chapter 16 Fractional Differential Calculus and Continuum Mechanics
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    Chapter 17 Implicit Nonlocality in the Framework of Viscoplasticity
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    Chapter 18 Continuum Homogenization of Fractal Media
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    Chapter 19 Spherical Indentation on a Prestressed Elastic Coating/Substrate System
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    Chapter 21 Properties of Material Interfaces: Dynamic Local Versus Nonlocal
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    Chapter 22 Uniqueness of Elastoplastic Properties Measured by Instrumented Indentation
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    Chapter 23 Hydrogen Embrittlement Cracking Produced by Indentation Test
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    Chapter 24 Crack Initiation and Propagation in Laminated Composite Materials
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    Chapter 25 Indentation Fatigue Mechanics
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    Chapter 26 Continuous Stiffness Measurement Nanoindentation Experiments on Polymeric Glasses: Strain Rate Alteration
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    Chapter 27 Size Effects and Material Length Scales in Nanoindentation for Metals
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    Chapter 28 Shear Transformation Zones in Amorphous Polymers: Geometrical and Micromechanical Properties
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    Chapter 29 Peridynamics: Introduction
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    Chapter 30 Recent Progress in Mathematical and Computational Aspects of Peridynamics
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    Chapter 31 Optimization-Based Coupling of Local and Nonlocal Models: Applications to Peridynamics
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    Chapter 32 Bridging Local and Nonlocal Models: Convergence and Regularity
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    Chapter 33 Dynamic Brittle Fracture from Nonlocal Double-Well Potentials: A State-Based Model
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    Chapter 34 Nonlocal Operators with Local Boundary Conditions: An Overview
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    Chapter 35 Peridynamics and Nonlocal Diffusion Models: Fast Numerical Methods
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    Chapter 36 Peridynamic Functionally Graded and Porous Materials: Modeling Fracture and Damage
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    Chapter 39 Numerical Tools for Improved Convergence of Meshfree Peridynamic Discretizations
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    Chapter 40 Well-Posed Nonlinear Nonlocal Fracture Models Associated with Double-Well Potentials
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    Chapter 41 Size Effects During Nanoindentation: Molecular Dynamics Simulation
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    Chapter 42 Nanostructural Response to Plastic Deformation in Glassy Polymers
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    Chapter 43 Strain Gradient Plasticity: Deformation Patterning, Localization, and Fracture
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    Chapter 44 Finite Differences and Finite Elements in Nonlocal Fracture Modeling: A Priori Convergence Rates
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    Chapter 45 Dynamic Damage Propagation with Memory: A State-Based Model
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    Chapter 46 Molecular Dynamics-Decorated Finite Element Method (MDeFEM): Application to the Gating Mechanism of Mechanosensitive Channels
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    Chapter 47 Helical Buckling Behaviors of the Nanowire/Substrate System
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    Chapter 48 Micropolar Crystal Plasticity
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    Chapter 49 Micromorphic Crystal Plasticity
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    Chapter 50 Experimentation and Modeling of Mechanical Integrity and Instability at Metal/Ceramic Interfaces
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    Chapter 51 Finite Element Analysis of Thermodynamically Consistent Strain Gradient Plasticity Theory and Applications
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Title
Handbook of Nonlocal Continuum Mechanics for Materials and Structures
Published by
Springer International Publishing, January 2018
DOI 10.1007/978-3-319-58729-5
ISBNs
978-3-31-958727-1, 978-3-31-958729-5, 978-3-31-958728-8
Editors

George Voyiadjis

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 51 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 51 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 10 20%
Researcher 5 10%
Student > Doctoral Student 5 10%
Other 4 8%
Student > Bachelor 3 6%
Other 9 18%
Unknown 15 29%
Readers by discipline Count As %
Engineering 22 43%
Materials Science 6 12%
Physics and Astronomy 2 4%
Computer Science 1 2%
Earth and Planetary Sciences 1 2%
Other 3 6%
Unknown 16 31%